Li Jiu-Sheng, Cheng Jie, Zhang Dong-Ping
Appl Opt. 2023 Jun 1;62(16):4197-4202. doi: 10.1364/AO.488764.
The Bessel beam has broad application prospects in wireless energy transmission and high-speed communications. The traditional Bessel beam generation method has the problems of large volume, low efficiency, and complex manufacturing. To solve the above problems, we present a terahertz Bessel beam generator based on the reflective metasurface, which is composed of a metal pattern, dielectric layer, and bottom metal plate. Under the incidence of right circularly polarized (RCP) wave, the zero-order Bessel beam and zero-order symmetric double Bessel beam are generated. It can be found that the bottom angle of the axicon of the first-order Bessel beam is inversely proportional to the propagation distance of the Bessel beam. Comparing the electric field intensity distribution, phase distribution, and mode purity of the second-order Bessel beam and the second-order vortex beam in different observation planes, it can be seen that the energy of the higher-order Bessel beam is more concentrated and the field distribution is more stable than those of the ordinary vortex beam. The reflective terahertz Bessel beam generator has potential application value in terahertz wireless communications, measurement, radar detection, and imaging.
贝塞尔光束在无线能量传输和高速通信领域具有广阔的应用前景。传统的贝塞尔光束产生方法存在体积大、效率低和制造复杂等问题。为了解决上述问题,我们提出了一种基于反射超表面的太赫兹贝塞尔光束发生器,它由金属图案、介质层和底部金属板组成。在右旋圆极化(RCP)波入射下,产生零阶贝塞尔光束和零阶对称双贝塞尔光束。可以发现,一阶贝塞尔光束的轴棱锥底角与贝塞尔光束的传播距离成反比。比较二阶贝塞尔光束和二阶涡旋光束在不同观测平面的电场强度分布、相位分布和模式纯度,可以看出高阶贝塞尔光束的能量比普通涡旋光束更集中,场分布更稳定。反射式太赫兹贝塞尔光束发生器在太赫兹无线通信、测量、雷达探测和成像等方面具有潜在的应用价值。